首页> 外文期刊>Ambio: A Journal of the Human Environment >Radionuclide Transport and Uptake in Coastal Aquatic Ecosystems: A Comparison of a 3D Dynamic Model and a Compartment Model
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Radionuclide Transport and Uptake in Coastal Aquatic Ecosystems: A Comparison of a 3D Dynamic Model and a Compartment Model

机译:沿海水生生态系统中放射性核素的运输和吸收:3D动态模型和隔室模型的比较

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摘要

In safety assessments of underground radioactive waste repositories, understanding radionuclide fate in ecosystems is necessary to determine the impacts of potential releases. Here, the reliability of two mechanistic models (the compartmental K-model and the 3D dynamic D-model) in describing the fate of radionuclides released into a Baltic Sea bay is tested. Both are based on ecosystem models that simulate the cycling of organic matter (carbon). Radionuclide transfer is linked to adsorption and flows of carbon in food chains. Accumulation of Th-230, Cs-135, and Ni-59 in biological compartments was comparable between the models and site measurements despite differences in temporal resolution, biological state variables, and partition coefficients. Both models provided confidence limits for their modeled concentration ratios, an improvement over models that only estimate means. The D-model enables estimates at high spatio-temporal resolution. The K-model, being coarser but faster, allows estimates centuries ahead. Future developments could integrate the two models to take advantage of their respective strengths.
机译:在地下放射性废物处置库的安全评估中,必须了解生态系统中的放射性核素命运,才能确定潜在释放的影响。在此,测试了两种机制模型(隔室K模型和3D动态D模型)在描述释放到波罗的海海湾中的放射性核素的结局方面的可靠性。两者均基于模拟有机物(碳)循环的生态系统模型。放射性核素的转移与食物链中碳的吸附和流动有关。尽管时间分辨率,生物学状态变量和分配系数存在差异,但是在模型和现场测量之间,在生物区室中Th-230,Cs-135和Ni-59的积累是可比的。两种模型都为其建模浓度比提供了置信度限制,这是对仅估算均值的模型的改进。 D模型可实现高时空分辨率的估计。 K模型虽然粗糙但速度更快,因此可以估计未来几个世纪。未来的发展可能会整合这两种模型,以利用它们各自的优势。

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